US2024373433A1PendingUtilityA1
Resource configuration method, electronic device and storage medium
Est. expiryJan 19, 2042(~15.5 yrs left)· nominal 20-yr term from priority
H04L 5/0064H04L 5/0012H04L 5/0094H04L 5/0053H04W 48/08H04W 72/231H04W 72/0457H04W 72/0453H04W 72/232Y02D30/70H04W 72/21
57
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Claims
Abstract
Embodiments of the present application provide a resource configuration method, an electronic device and a storage medium. The method comprises: determining edge position information of a PUCCH resource according to a base station signaling; determining a common PUCCH resource set in a PUCCH resource set configuration table according to the edge position information and an SIB message; and determining the PUCCH resource according to the edge position information and a physical resource block offset that corresponds to the common PUCCH resource set.
Claims
exact text as granted — not AI-modifiedI/We claim:
1 . A method for communication, comprising:
receiving, from a base station, edge position information of a physical uplink control channel (PUCCH) resource; receiving PUCCH resource information, wherein the PUCCH resource information is used to determine a PUCCH resource index in a PUCCH resource set configuration table; and determining the PUCCH resource according to the edge position information and a physical resource block offset that corresponds to the PUCCH resource index.
2 . The method according to claim 1 , wherein the edge position information indicates a lower edge of an uplink (UL) bandwidth part (BWP), and determining the PUCCH resource comprises determining the PUCCH resource in increasing order with physical resource block (PRB) from the lower edge of the UL BWP; or
wherein the edge position information indicates an upper edge of an UL BWP, and determining the PUCCH resource comprises determining the PUCCH resource in decreasing order with PRB from the upper edge of the UL BWP.
3 . The method according to claim 1 , wherein the edge position information is received in a base station signaling comprising at least one of the following: a remaining minimum system information SIB1, downlink control information DCI, and other system information.
4 . The method according to claim 1 , wherein the edge position information comprises at least one of the following cases: an upper edge of an uplink BWP, a lower edge of the uplink BWP, both sides of the uplink BWP, or an upper edge of an uplink BWP, a lower edge of an uplink BWP, or one side of an uplink BWP, the both sides of an uplink BWP.
5 . The method according to claim 1 , wherein the PUCCH resource set configuration table comprises at least one of the following: a common PUCCH resource set configuration table of a conventional NR UE, or a dedicated PUCCH resource set configuration table,
wherein the PUCCH resource comprises at least one of the following: a common PUCCH resource, a PUCCH resource corresponding to an MSG4 message, and a PUCCH resource corresponding to an MSGB message.
6 . The method according to claim 1 , further comprising:
receiving an additional offset parameter related with the edge position information from the base station; and determining the physical resource block offset further according to the additional offset parameter.
7 . The method according to claim 6 , wherein the additional offset parameter is configured by a system information block SIB message or downlink control information DCI, the additional offset parameter is configured to adjust the physical resource block offset based on an addition operation or a multiplication operation.
8 . The method according to claim 6 , wherein the additional offset parameter comprises at least one of: 4, 6, 8, 9, 10, 2, −4, or 0.
9 . The method according to claim 1 , wherein determining the PUCCH resource comprises:
determining a PRB index of the PUCCH based on any one of:
R
B
B
W
P
offset
+
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
or
,
N
B
W
P
s
i
z
e
-
1
-
R
B
B
W
P
offset
-
⌊
r
P
U
C
C
H
/
N
C
S
⌋
wherein N BWP size represents a number of PRBs of an initial uplink BWP configured to a reduced capacity (RedCap) user equipment (UE),
RB BWP offset represents a PRB offset corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
N CS represents a total number of initial cyclic shift indexes in the set of initial cyclic shift indexes corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
└ ┘ represents a rounding down operation, and
mod represents a modulo operation.
10 . The method according to claim 6 , wherein determining the PUCCH resource comprises:
determining a PRB index of the PUCCH based on:
R
B
B
W
P
offset
′
+
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
or
N
B
W
P
s
i
z
e
-
1
-
R
B
B
W
P
offset
′
-
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
wherein RB BWP offset′ is determined based on any of: RB BWP offset′ =RB BWP offset +ρ,
R
B
B
W
P
offset
′
=
κ
·
RB
B
W
P
offset
+
ρ
,
RB
B
W
P
offset
′
=
R
B
B
W
P
offset
·
ρ
,
or
RB
B
W
P
offset
′
=
κ
·
RB
B
W
P
o
f
f
s
e
t
·
ρ
wherein N BWP size represents a number of PRBs of an initial uplink BWP configured to a reduced capacity (RedCap) user equipment (UE),
RB BWP offset represents a PRB offset corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
N CS represents a total number of initial cyclic shift indexes in the set of initial cyclic shift indexes corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
└ ┘ represents a rounding down operation, and mod represents a modulo operation,
ρ represents the additional offset parameter, and
k represents a fixed value greater than zero.
11 . A method for communication, comprising:
transmitting to a terminal device, edge position information of a physical uplink control channel (PUCCH) resource; and transmitting to the terminal device, PUCCH resource information, wherein the PUCCH resource information is used to determine a PUCCH resource index in a PUCCH resource set configuration table, wherein the edge position information and a physical resource block offset that corresponds to the PUCCH resource index are used to determine the PUCCH resource.
12 . The method according to claim 11 , wherein the edge position information indicates a lower edge of an uplink (UL) bandwidth part (BWP), and the PUCCH resource is determined in increasing order with physical resource block (PRB) from the lower edge of the UL BWP; or
wherein the edge position information indicates an upper edge of an UL BWP, the PUCCH resource is determined in decreasing order with PRB from the upper edge of the UL BWP.
13 . The method according to claim 11 , wherein the edge position information is transmitted in a base station signaling comprising at least one of the following: a remaining minimum system information SIB1, downlink control information DCI, and other system information.
14 . The method according to claim 11 , wherein the edge position information comprises at least one of the following cases: an upper edge of an uplink BWP, a lower edge of the uplink BWP, both sides of the uplink BWP, or an upper edge of an uplink BWP, a lower edge of an uplink BWP, or one side of an uplink BWP, the both sides of an uplink BWP.
15 . The method according to claim 11 , wherein the PUCCH resource set configuration table comprises at least one of the following: a common PUCCH resource set configuration table of a conventional NR UE, or a dedicated PUCCH resource set configuration table.
16 . The method according to claim 11 , further comprising:
transmitting an additional offset parameter related with the edge position information to the terminal device, wherein the physical resource block offset is further determined according to the additional offset parameter.
17 . The method according to claim 16 , wherein the additional offset parameter is configured by a system information block SIB message or downlink control information DCI, the additional offset parameter is configured to adjust the physical resource block offset based on an addition operation or a multiplication operation.
18 . The method according to claim 16 , wherein the additional offset parameter comprises at least one of: 4, 6, 8, 9, 10, 2, −4, or 0.
19 . The method according to claim 11 , wherein the PUCCH resource is determined by determining a PRB index of the PUCCH based on any one of:
R
B
B
W
P
offset
+
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
or
N
B
W
P
s
i
z
e
-
1
-
R
B
B
W
P
offset
-
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
wherein N BWP size represents a number of PRBs of an initial uplink BWP configured to a reduced capacity (RedCap) user equipment (UE),
RB BWP offset represents a PRB offset corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
N CS represents a total number of initial cyclic shift indexes in the set of initial cyclic shift indexes corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
└ ┘ represents a rounding down operation, and
mod represents a modulo operation.
20 . The method according to claim 16 , wherein the PUCCH resource is determined by determining a PRB index of the PUCCH based on:
R
B
B
W
P
offset
′
+
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
or
N
B
W
P
s
i
z
e
-
1
-
R
B
B
W
P
offset
′
-
⌊
r
P
U
C
C
H
/
N
C
S
⌋
,
wherein RB BWP offset′ is determined based on any of:
R
B
B
W
P
offset
′
=
RB
BWP
offset
+
ρ
,
RB
BWP
offset
′
=
κ
·
RB
B
W
P
offset
+
ρ
,
RB
B
W
P
offset
′
=
R
B
B
W
P
offset
·
ρ
,
or
RB
B
W
P
offset
′
=
κ
·
RB
B
W
P
o
f
f
s
e
t
·
ρ
wherein N BWP size represents a number of PRBs of an initial uplink BWP configured to a reduced capacity (RedCap) user equipment (UE),
RB BWP offset represents a PRB offset corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
N CS represents a total number of initial cyclic shift indexes in the set of initial cyclic shift indexes corresponding to the PUCCH resource index in the PUCCH resource set configuration table,
└ ┘ represents a rounding down operation, and mod represents a modulo operation,
ρ represents the additional offset parameter, and
k represents a fixed value greater than zero.
21 . An electronic device, wherein the electronic device comprises:
one or more processors; a memory for storing one or more programs; wherein the one or more programs, when executed by the one or more processors, cause the one or more processors to perform: receiving, from a base station, edge position information of a physical uplink control channel (PUCCH) resource; receiving PUCCH resource information, wherein the PUCCH resource information is used to determine a PUCCH resource index in a PUCCH resource set configuration table; and determining the PUCCH resource according to the edge position information and a physical resource block offset that corresponds to the PUCCH resource index.
22 . An electronic device, wherein the electronic device comprises:
one or more processors; a memory for storing one or more programs; wherein the one or more programs, when executed by the one or more processors, cause the one or more processors to perform the method according to claim 11 .
23 . A computer-readable storage medium having one or more programs stored thereon for execution by the one or more processors to perform the method according to claim 1 .Join the waitlist — get patent alerts
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